© 2017 Euraap. By augmenting several classes of metamaterial-inspired near-field resonant parasitic (NFRP) electrically small antennas (ESAs) with active (non-Foster) circuits, we have achieved performance characteristics surpassing their fundamental passive bounds. The designs not only have high radiation efficiencies, but they also exhibit large frequency bandwidths, large beam widths, large front-to-back ratios, and high directivities. Furthermore, the various initially theoretical and simulated designs have led to practical realizations. These active NFRP ESAs will be reviewed and recently reported designs will be introduced and discussed
© 2016 IEEE. The efficacy of a simple, electrically small, low-profile, Huygens source antenna that ...
There are always some intrinsic tradeoffs among the performance characteristics: radiation efficienc...
Non-Foster element-augmented electrically small electric and magnetic antennas have been designed, c...
© 2017 Euraap. Metamaterial-inspired near-field resonant parasitic (NFRP) electrically small antenna...
© 2018 IEEE. A variety of near-field resonant parasitic (NFRP) antennas have been developed as elect...
Realistic designs of broad-bandwidth metamaterial-inspired electric and magnetic antennas are charac...
Metamaterials have drawn considerable attention because they can exhibit epsilon-negative (ENG) and/...
We have developed a variety of electrically small, near-field resonant parasitic (NFRP) antennas. Th...
Non-Foster element-augmented, electrically small electric and magnetic antennas have been designed, ...
A variety of antennas have been engineered with metamaterials (MTMs) and metamaterial-inspired const...
© 2016 European Association of Antennas and Propagation. It has been demonstrated that metamaterial-...
A broad bandwidth, electrically small, metamaterial-inspired protractor antenna was designed, fabric...
A wideband, electrically small dipole antenna with stable radiation performance is presented. Inspir...
© 2015 IEEE. The juxtaposition of materials having positive and negative effective properties allows...
A broadband metamaterial-inspired antenna has been designed and tested numerically. By making full u...
© 2016 IEEE. The efficacy of a simple, electrically small, low-profile, Huygens source antenna that ...
There are always some intrinsic tradeoffs among the performance characteristics: radiation efficienc...
Non-Foster element-augmented electrically small electric and magnetic antennas have been designed, c...
© 2017 Euraap. Metamaterial-inspired near-field resonant parasitic (NFRP) electrically small antenna...
© 2018 IEEE. A variety of near-field resonant parasitic (NFRP) antennas have been developed as elect...
Realistic designs of broad-bandwidth metamaterial-inspired electric and magnetic antennas are charac...
Metamaterials have drawn considerable attention because they can exhibit epsilon-negative (ENG) and/...
We have developed a variety of electrically small, near-field resonant parasitic (NFRP) antennas. Th...
Non-Foster element-augmented, electrically small electric and magnetic antennas have been designed, ...
A variety of antennas have been engineered with metamaterials (MTMs) and metamaterial-inspired const...
© 2016 European Association of Antennas and Propagation. It has been demonstrated that metamaterial-...
A broad bandwidth, electrically small, metamaterial-inspired protractor antenna was designed, fabric...
A wideband, electrically small dipole antenna with stable radiation performance is presented. Inspir...
© 2015 IEEE. The juxtaposition of materials having positive and negative effective properties allows...
A broadband metamaterial-inspired antenna has been designed and tested numerically. By making full u...
© 2016 IEEE. The efficacy of a simple, electrically small, low-profile, Huygens source antenna that ...
There are always some intrinsic tradeoffs among the performance characteristics: radiation efficienc...
Non-Foster element-augmented electrically small electric and magnetic antennas have been designed, c...